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Results 1-10 of 19 (Search time: 0.001 seconds).
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PreviewIssue DateTitleAuthor(s)
2015Experimental characterisation of the vortex structure within a Solar Expanding-Vortex Particle Receiver-ReactorChinnici, A.; Xue, Y.; Lau, T.; Arjomandi, M.; Nathan, G.; Honnery, D.; Edgington-Mitchell, D.; 7th Australian Conference on Laser Diagnostics in Fluid Mechanics and Combustion (9 Dec 2015 - 11 Dec 2015 : Melbourne)
2019Characteristics of swirling and precessing flows generated by multiple confined jetsLong, S.; Lau, T.; Chinnici, A.; Tian, Z.; Dally, B.; Nathan, G.; Giacomin, J.
2022Potential for SA in additional processing of SA's minerals depositsWagner, L.; Chinnici, A.; Spandler, C.; Cook, N.; Saw, W.; Nathan, G.; Goodsite, M.; South Australian Productivity Commission
2017Techno-economic evaluation of modular hybrid concentrating solar power systemsLim, J.; Dally, B.; Chinnici, A.; Nathan, G.
2018Combined solar energy and combustion of hydrogen-based fuels under MILD conditionsChinnici, A.; Nathan, G.; Dally, B.
2017Experimental and numerical investigation of the iso-thermal flow characteristics within a cylindrical chamber with multiple planar-symmetric impinging jetsLong, S.; Lau, T.; Chinnici, A.; Tian, Z.; Dally, B.; Nathan, G.
2018Experimental investigation of the effects of wind speed and yaw angle on heat losses from a heated cavityLee, K.; Chinnici, A.; Jafarian, M.; Arjomandi, M.; Dally, B.; Nathan, G.
2018Experimental demonstration of the hybrid solar receiver combustorChinnici, A.; Nathan, G.; Dally, B.
2019The influence of wind speed, aperture ratio and tilt angle on the heat losses from a finely controlled heated cavity for a solar receiverLee, K.L.; Chinnici, A.; Jafarian, M.; Arjomandi, M.; Dally, B.; Nathan, G.
2019Particle residence time distributions in a vortex-based solar particle receiver-reactor: the influence of receiver tilt angleDavis, D.; Troiano, M.; Chinnici, A.; Saw, W.; Lau, T.C.; Solimene, R.; Salatino, P.; Nathan, G.